首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Core-shell solar cell fabrication using heterostructure of ZnO-nanowires arrays decorated with sputtered CdTe-nanoparticles
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Core-shell solar cell fabrication using heterostructure of ZnO-nanowires arrays decorated with sputtered CdTe-nanoparticles

机译:核壳太阳能电池使用Zno-纳米线阵列的异质结构,装饰着溅射的CDTE纳米粒子

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摘要

Core-shell heterostructures of ZnO-NWs/CdTe-NPs were fabricated through covering ZnO-NWs arrays using CdTe-NPs and the room temperature RF magnetron sputtering method. The influence of different CdTe-NPs deposition time (5, 20, 40 and 60 min) on the physical properties of core-shell heterostructures were investigated. In order to achieve the highest coverage level and a wide range of optical absorption at a visible range for a ZnO-NWs/CdTe-NPs (60 min) array, FTO/ZnO-NWs/CdTe-NPs (60 min)/Ni/Au core-shell solar cells were used. Solar cell fabrication was performed by soaking the samples in a saturated CdCl2 solution in methanol and a post-annealing treatment at 400 degrees C for 1 h in air which led to grain growth, the passivation of deep level defects, and the decrease of stacking faults. Short-circuit current and power conversion efficiency of the fabricated cell under illumination with visible light AM1.5 (100 mW cm(-2)) were 13.3 mA cm(-2) and 3.41%, respectively. It was found that introducing a thin interfacial layer of CdSe to the configuration (FTO/ZnO-NWs/CdSe (10 nm)/CdTe-NPs (60 min)/Ni/Au) led to a 5.58% enhancement of photovoltaic performance of the solar cell (20.9 mA cm(-2)), which is 63.6% more than that of the same configuration without CdSe.
机译:通过使用CDTE-NPS和室温RF磁控溅射方法覆盖ZnO-NWS阵列,制造氧壳异质结构。研究了不同CDTE-NPS沉积时间(5,20,40和60分钟)对核 - 壳异质结构的物理性质的影响。为了在ZnO-NWS / CDTE-NPS(60分钟)阵列(60分钟),FTO / ZnO-NWS / CDTE-NPS(60分钟)/ Ni /使用Au核心壳太阳能电池。通过将样品浸泡在甲醇中的饱和CDCl2溶液中的样品和400℃的饱和后处理在空气中浸泡到晶粒生长,深水位缺陷的钝化和堆叠断层的钝化。在具有可见光AM1.5的照明下制造电池的短路电流和功率转换效率(100mW cm(-2))分别为13.3mA cm(-2)和3.41%。发现将CDSE的薄界面层引入构型(FTO / ZnO-NWS / CDSE(10nm)/ CdTe-nps(60分钟)/ Ni / Au)导致了5.58%的光伏性能增强太阳能电池(20.9 mA cm(-2)),比没有CDSE的相同配置的63.6%。

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